Browse > Article
http://dx.doi.org/10.9717/kmms.2015.18.12.1468

Resource Allocation for Device-to-Device Communications Reusing Uplink in Cellular Networks  

Radwan, Amr (Dept. of Information and Communication System, Inje University)
Publication Information
Abstract
Efficient spectrum sharing is an important issue in Device-to-Device (D2D) communications underlaying cellular networks as it can mitigate the interference to cellular users and improve the performance of the systems. In this paper, we formulate the radio resource allocation in D2D communications as a mixed nonlinear integer programing. We show the formulated problem is NP-hard and thus a polynomial time algorithm to solve is not possible. Since such a problem is very hard to obtain the optimal solution within a short running time, we instead propose a fast heuristic suboptimal algorithm to mitigate the interference caused to cellular users and improve the performance of the systems. Simulation results are provided to evaluate the performance of the proposed algorithm.
Keywords
Resource Allocation; D2D Communications; Cellular Networks; Spectrum Sharing; Nonlinear Integer Programing;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 K. Doppler, R. Rinne, C. Wijting, C. Ribeiro, and K. Hugl, "Device-to-Device Communication as an underlay to LTE-Advanced Networks," IEEE Communications Magazine, Vol. 47, No. 12, pp. 42-49, 2009.   DOI
2 Cisco, "Visual Networking Index: Forecast and Methodology, 2008-2013," Cisco Systems, White Paper, 2009.
3 A. Asadi, Q. Wang, and V. Mancuso, "A Survey on Device-to-Device Communication in Cellular Networks," IEEE Communications Surveys & Tutorials, Vol. 16, No. 4, pp. 1801-1819, 2014.   DOI
4 P. Marques, J. Bastos, and A. Gameiro, "Oppotunistic Use of 3G Uplink Licensed Bands," Proceeding of IEEE International Conference Communication, pp. 3588-3592, 2008.
5 K. Huang, Y. Chen, B. Chen, X. Yang, and V.K.N. Lau, "Overlaid Cellular and Mobile ad hoc Networks," Proceeding of IEEE Singapore International Conference on Communication Systems, pp. 1560-1564, 2008.
6 C.H. Yu, O. Tirkkonen, K. Doppler, and C. Ribeiro, "On the Performance of Device-to-Device Underlay Communication with Simple Power Control," Proceeding of Vehicular Technology Conference, pp. 1-5, 2009.
7 B. Xing, K. Seada, and N. Venkatasubramanian, "An Experimental Study on Wi-Fi Ad-Hoc Mode for Mobile Device-to-Device Video Delivery," Proceeding of IEEE INFOCOM Workshops, pp. 1-6, 2009.
8 M. Ajtai, J. Komlós, and E. Szemerédi, "An O(nlogn) Sorting Network," Proceeding of the fifteenth annual ACM Symposium on Theory of Computing (STOC '83) , pp. 1-9, 1983.
9 J. Kim, K. Nguyen, J. Lee, and W. Hwang, "An Integrated Game Theoretical Approach fro Primary and Secondary User Spectrum Sharing in Cognitive Radio Networks," Journal of the Korea Multimedia Society, Vol. 14, No. 12, pp. 1549-1558, 2011.   DOI
10 M. Zulhasnine, H. Changcheng, and A. Srinivasan, "Efficient Resource Allocation for Device-to-Device Communication Underlaying LTE Network," Proceeding of Wireless and Mobile Computing, Networking and Communications, pp. 368-375, 2010.
11 Z.Q. Luo and S. Zhang, "Dynamic Spectrum Management: Complexity and Duality," Journal of IEEE Selected Topics in Signal Processing, Vol. 2, No. 1, pp. 57-73, 2008.   DOI
12 ITU, "Guideline for Evaluation of Radio Interface Technologies for IMT-Advanced", Report, M. 2135-0, 2008.